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Urban Aragon, J. A.

Publications and source records attributed to Urban Aragon, J. A..

3 recordsLinked to original sources

Ancient human genomes from Ladakh reveal Tibetan, South Asian, and Central Asian admixture over the last three millennia

The trans-Himalayan region of Ladakh occupies a strategic position at the crossroads of South Asia, the Tibetan Plateau, and Central Asia, with archaeological evidence pointing to long-term cultural exchanges across these regions. However, the human genetic history of Ladakh remains largely unexplored. We generated paleogenomic data from seven individuals recovered from two sites in Western Ladakh - the Old Lady Spider Cave and Hanu - of which six are dated to 531-585 CE and one to the 19th century CE. The older individuals share substantial genetic ancestry with Tibetan groups but also harbor major contributions from two additional sources: one corresponding to the currently-oldest observation of the Ancestral North Indian genetic component that characterizes several present-day populations in North India and Pakistan, and another related to ancient Central Asian groups, with admixture events occurring between [~]2,100-2,500 years ago. In contrast, the later individual falls within a previously described ancient northern Himalayan genetic cline based on [~]1,100-1,300-year-old individuals from Himachal Pradesh, with ancestries related to ancient Tibetan and Steppe-related sources. Stable isotope analysis suggests that these individuals were local to Ladakh in late life and practiced an agro-pastoralist subsistence. Our study establishes that Ladakhs central role in Eurasian economic and socio-cultural networks was shaped by dynamic and sustained gene flow linking high-altitude Himalayan groups with both lowland South Asia and Inner Asia.

genetics↗

Distinct trajectories of urbanization shape the human gut microbiome across South Asia

Human gut microbiomes respond to lifestyle transitions, yet the extent to which these responses are conserved across spatio-cultural contexts remains undercharacterized. We present the South Asian MicroBiome ARray (SAMBAR), a population-scale 16S gut microbiome study of 575 adults from ten geographically and socio-culturally diverse South Asian communities. Each community was sampled in ancestral villages and urban centers, enabling controlled comparisons of geography and lifestyle. Relative to global cohorts, SAMBAR microbiomes occupy a distinct compositional space with stronger correlation to geography and community membership than lifestyle. Although urbanization is consistently associated with increased abundance of disease-linked taxa, microbiome responses to lifestyle transitions are largely community-driven, including the acquisition of wheat- and dairying-associated microbial modules in some communities that may facilitate non-genetic adaptation to lactase non-persistence. Microbiome responses to urbanization are heterogeneous even at regional scales, reflecting local culture and geography and underscoring the need for community-specific investigations of health impacts.

microbiology↗

Recurrent introgression and geographical stratification shape Saccharomyces cerevisiae in the Neotropics

HighlightsO_LIPhylogenetic analyses of S. cerevisiae isolates from agave fermentation reveal novel clades within the Neotropical cluster. C_LIO_LIThe Neotropical cluster shows geographical population structure. C_LIO_LIMultiple pulses of interspecific introgression are part of the evolutionary history of S. cerevisiae in the Neotropics C_LI From yeasts to humans, introgressive hybridization significantly influences the evolutionary history of living organisms by introducing new genetic diversity. Strains of Saccharomyces cerevisiae worldwide exhibit introgressions from the sister species S. paradoxus, despite the average sequence identity between these species being lower than 90%. While S. cerevisiae isolates from the Neotropics are known for their high levels of introgression, the evolutionary events leading to the unusually high prevalence of them remain unclear. Here, we sequenced 216 S. cerevisiae isolates living in open agave fermentation across Mexico, a habitat at the interface of natural and industrial environments. The genomes of these strains revealed considerable genetic diversity and population structure linked to geographic distribution, which had been overlooked due to undersampling of this megadiverse region. These strains, along with those from French Guiana, Ecuador, and Brazil, form a broader Neotropical phylogenetic cluster that is notably enriched in introgressed DNA. Surprisingly, the origins and conservation patterns of introgressions indicate multiple hybridization events, suggesting an unprecedented scenario of flexible species barriers in this region. Our findings underscore concurrent evolutionary processes--geographical stratification and multiple introgressions--that shape the genomes of a diverse lineage of S. cerevisiae. Neotropical yeasts thus provide a natural laboratory for exploring the mechanisms and adaptive significance of introgressive hybridization in eukaryotic genome evolution.

evolutionary biology↗